日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Machine Learning-Enhanced Optimization for High-Throughput Precision in Cellular Droplet Bioprinting

机器学习增强的优化技术在细胞液滴生物打印中的高通量精准应用

Shin, Jaemyung; Kang, Ryan; Hyun, Kinam; Li, Zhangkang; Kumar, Hitendra; Kim, Kangsoo; Park, Simon S; Kim, Keekyoung

Bioprinting of hepatic tissue model using photocrosslinkable dECM-containing composite hydrogel.

利用光交联 dECM 复合水凝胶进行肝组织模型生物打印

Tabatabaei Rezaei Nima, Kumar Hitendra, Liu Hongqun, Rajeev Ashna, Natale Giovanniantonio, Lee Samuel S, Park Simon S, Kim Keekyoung

High-Resolution Heterogeneous Hydrogel Printing Using a Home Projector

利用家用投影仪进行高分辨率异质水凝胶打印

Li, Zhangkang; Shin, Jaemyung; Dixit, Kartikeya; Liu, Daichen; Zhang, Hongguang; Lu, Qingye; Kumar, Hitendra; Kim, Keekyoung; Hu, Jinguang

A novel machine-learning aided platform for rapid detection of urine ESBLs and carbapenemases: URECA-LAMP

一种用于快速检测尿液中超广谱β-内酰胺酶(ESBLs)和碳青霉烯酶的新型机器学习辅助平台:URECA-LAMP

Castellanos, L Ricardo; Chaffee, Ryan; Kumar, Hitendra; Mezgebo, Biniyam Kahsay; Kassau, Pawulos; Peirano, Gisele; Pitout, Johann D D; Kim, Keekyoung; Pillai, Dylan R

Recent Advances in Organ-on-Chips Integrated with Bioprinting Technologies for Drug Screening

芯片器官与生物打印技术相结合用于药物筛选的最新进展

Tabatabaei Rezaei, Nima; Kumar, Hitendra; Liu, Hongqun; Lee, Samuel S; Park, Simon S; Kim, Keekyoung

Overexpression of a cell wall damage induced transcription factor, OsWRKY42, leads to enhanced callose deposition and tolerance to salt stress but does not enhance tolerance to bacterial infection

细胞壁损伤诱导转录因子OsWRKY42的过表达会导致胼胝质沉积增加和耐盐胁迫能力增强,但不会增强对细菌感染的耐受性。

Shakuntala E Pillai,Chandan Kumar,Hitendra K Patel,Ramesh V Sonti